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.(1)^(3)H and .(2)^(4)He are:...

`._(1)^(3)H` and `._(2)^(4)He` are:

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isotones
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Explore conceptually related problems

Explain why ._(1)^(3)H and ._(2)^(3)He are not considered isotopes

Binding energy per nucleus of ._(1)^(2)H and ._(2)^(4)He are 1.1 MeV and 7 MeV respectively. Calculate the amount of energy released in the following process: ._(1)^(2)H + ._(1)^(2)H to ._(2)^(4)He

Calculate the energy released in MeV during the reaction ._(3)^(7)Li + ._(1)^(1)H to 2[._(2)^(4)He] if the masses of ._(3)^(7)Li, ._(1)^(1)H and ._(2)H_(4)He are 7.018, 1.008 and 4.004 amu respectively.

calculate the energy released in the nuclear fusion of isotopes of hydrogen (i) ._(1)^(2)H + ._(1)^(2)H rarr ._(2)^(3)He + ._(0)^(1)n (ii) ._(1)^(2)H + ._(1)^(3)H rarr ._(2)^(4)He + ._(0)^(1)n Given that mass of neutron = 1.00867 amu {:("mass of",._(1)^(2)H = 2.01410,am u,),("mas of",._(1)^(3)H = 3.01603,am u,),("mass of ",._(2)^(3)H = 3.0160,am u,),("mass of ",._(2)^(4)He = 4.00260,am u,):}

The nuclear reaction ._(1)^(2)H + ._(1)^(2)H to ._(2)^(4)He is called

Calculate the mass loss in the following: ._(1)^(2)H + ._(1)^(3)H to ._(2)^(4)He + ._(0)^(1)n given the masses: ._(1)^(2)H = 2.014 amu, ._(1)^(3)H = 3.016 amu: ._(2)^(4)He = 4.004 amu, ._(0)^(1)n = 008 amu

In the nuclear fusion reaction _(1)^(2)H + _(1)^(3)H rarr _(2)^(4)He + n given that the repulsive potential energy between the two nuclei is - 7.7 xx 10^(-14) J , the temperature at which the gases must be beated the reaction is nearly [Boltzmann's constant k = 1.38 xx 10^(-23) J//K]

An isotopic species of lithium hydride LiH is a potential fuel in a reactor on the basis of reaction ._(3)^(6)Li+._(1)^(2)H rarr 2._(2)^(4)He . Find the possible power production in kW assciated with the consumption of 1g of .^(6)Li^(2)H per day, if the efficiency of the process is 100 % . [M(._(3)^(6)Li) = 6.01702 am u, M(._(1)^(2)H) = 2.01474 am u, M(._(2)^(4)He) = 4.00388 am u]

MOTION-RADIOACTIVITY -EXERCISE - 3
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  2. In a nature decay chain series starts with ""(90)Th^(232) and finally ...

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  3. A sample of {:(131),( 53):} I, as iodine ion, was administered to a pa...

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  4. A sample of Uraninite, a Uranium containing mineral was found on analy...

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  5. .(92)^(238)U by successive radioactive decays changes to .(82)^(206) P...

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  6. A sample pitch blende is found to contain 50% Uranium (U^(238)) and 2....

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  7. A 10 mL sample of a solution containing 1.0 xx 10^(–7) Ci of {:(3),(1...

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  8. Nuclei of a radioactive element A are being produced at a constant rat...

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  9. Nuclei of a radioactive element 'A' are being produced at a constant r...

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  10. Nuclei of a radioactive element 'A' are being produced at a constant r...

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  11. Mass defect in the nuclear reactions may by expressed in terms of the ...

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  12. Mass defect in the nuclear reactions may by expressed in terms of the ...

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  13. 1 Curie is equal to.

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  14. {:(14),(6):}C decays by emission of .

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  15. Emission of a beta - particle by a nuclide results in the formation o...

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  16. The number of alpha and beta - particles emitted, when the following...

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  17. The nuclides with same difference of number of neutrons and number of ...

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  18. When {:(30),( 15):}P emits a position, the daughter nuclide formed is ...

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  19. A nuclide which lies above the zone of stability is likely to emit .

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  20. .(1)^(3)H and .(2)^(4)He are:

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